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Numerical investigation of fast-wave propagation and radio-frequency sheath interaction with a shaped tokamak wall

机译:托卡马克异形壁快速波传播与射频护套相互作用的数值研究

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Interactions between propagating fast waves and radio-frequency (RF) sheaths in the ion cyclotron range of frequencies are numerically investigated based on a cold fluid plasma model coupled with a sheath boundary condition. In this two-dimensional study, the capability of the finite element code rfSOL, which was developed in previous numerical work, is extended to analyze self-consistent RF sheath-plasma interaction problems in a tokamak with a non-circular cross-section. It is found that a large sheath voltage is generated near the edges of the limiter-shaped deformation as a result of the conversion from fast to slow waves on the sheaths. The sheath voltage associated with this conversion is particularly significant in the localized region where the contact angle between the magnetic field line and the conducting wall varies rapidly along the curved sheath surface, which is consistent with the results in previous one-dimensional theoretical work. The dependences of the RF sheaths on various parameters in plasma such as the toroidal wavenumber, edge plasma density, and the degree of the RF wave absorption in the core region are also examined in detail. (C) 2015 AIP Publishing LLC.
机译:基于耦合鞘层边界条件的冷流体等离子体模型,对离子回旋加速器频率范围内传播的快波与射频鞘层之间的相互作用进行了数值研究。在此二维研究中,扩展了先前数值研究中开发的有限元代码rfSOL的功能,以分析具有非圆形横截面的托卡马克中的自洽RF鞘-质相互作用问题。已经发现,由于护套上的快波到慢波的转换,在限制器形变形的边缘附近会产生大的护套电压。与该转换相关的护套电压在局部区域中尤其重要,在该区域中,磁力线和导电壁之间的接触角沿着弯曲的护套表面迅速变化,这与先前的一维理论工作的结果一致。还详细检查了RF护套对等离子体中各种参数(如环形波数,边缘等离子体密度和核心区域中RF波吸收程度)的依赖性。 (C)2015 AIP Publishing LLC。

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